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Eliminating Conflicts in a Multilevel Cache Using XOR-Based Placement Techniques

机译:使用基于XOR的放置技术消除多级缓存中的冲突

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Eliminating the conflict misses always remained the primary objective for the designers of cache memory. Although many alternative cache block placement techniques have been proposed in the past, the amount of research published on this so far is less than one expects. Most of the past techniques discuss to eliminate conflicts where an application generates a particular memory access pattern in a solo cache memory. With the advent of multiprocessing architectures it becomes more likely that an application mix does not generate a regular access pattern against a multilevel cache hierarchy system. In this paper, we present two cache placement techniques called the least-XOR and the full-XOR specially tailored for a multilevel cache system. These techniques lower the conflict misses by eliminating the conflicts occurring under the scenarios where two addresses are in conflict with each other at multiple levels in a cache hierarchy. Since these schemes target only the cache hashing functions, they do not require any additional hardware on the chip. Our results on sixteen memory intensive spec2000 benchmark traces show that the proposed schemes gives a significant improvement in the cache miss rate, memory traffic and CPI over the traditional scheme. The full-XOR technique achieves 19% reduction whereas least-XOR achieves 17% reduction in the L3 cache global miss rate. The results also show that the schemes perform well even for multi-trace workloads.
机译:消除冲突遗漏始终是高速缓存设计人员的主要目标。尽管过去已经提出了许多替代性的缓存块放置技术,但是到目前为止,有关此问题的研究数量还少于预期。过去的大多数技术都讨论了消除冲突的方法,其中应用程序在单独高速缓存中生成特定的存储器访问模式。随着多处理体系结构的到来,应用程序混合很有可能不会针对多级缓存层次结构系统生成常规访问模式。在本文中,我们介绍了专门为多级缓存系统量身定制的两种缓存放置技术,称为最小XOR和全XOR。这些技术通过消除在两个地址在高速缓存层次结构中的多个级别相互冲突的情况下发生的冲突,从而降低了冲突丢失率。由于这些方案仅针对高速缓存哈希函数,因此它们不需要芯片上的任何其他硬件。我们在16个内存密集的spec2000基准测试轨迹上的结果表明,与传统方案相比,提出的方案在缓存未命中率,内存流量和CPI方面有了显着改善。完全XOR技术的L3缓存全局未命中率降低了19%,而最少XOR技术则降低了17%。结果还表明,即使对于多跟踪工作负载,该方案也能很好地执行。

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